骨软骨组织工程梯度支架的研究进展

IF 5 Q1 ENGINEERING, BIOMEDICAL
J. Oliveira, V. Ribeiro, R. Reis
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引用次数: 8

摘要

骨软骨(OC)组织是已知的最具层次性和复杂性的结构之一,它由透明关节软骨和软骨下骨两个主要部分组成。它表现出从软骨层到骨层的独特的细胞和分子转变。骨关节炎和创伤性病变等OC疾病可能会影响关节软骨、钙化软骨(界面区)和软骨下骨,从而对再生提出巨大挑战。组织工程(TE)原理可以提供新的技术和组合方法,更好地概括生物OC在生物化学、机械、结构和代谢梯度方面的挑战和复杂性,并最终提供具有高再现性、多功能性和适应性的生物功能3D支架,以满足每个患者的需求,因为它发生在OC组织缺陷中。本文综述了OCTE策略梯度支架的最新报道和未来发展方向。特别关注临床翻译/监管审批。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advances on gradient scaffolds for osteochondral tissue engineering
The osteochondral (OC) tissue is one of the most hierarchical and complex structures known and it is composed by two main compartments of hyaline articular cartilage and subchondral bone. It exhibits unique cellular and molecular transitions from the cartilage to the bone layers. OC diseases such as osteoarthritis and traumatic lesions may affect the articular cartilage, calcified cartilage (interface region) and subchondral bone, thus posing great regenerative challenges. Tissue engineering (TE) principles can offer novel technologies and combinatorial approaches that can better recapitulate the biological OC challenges and complexity in terms of biochemical, mechanical, structural and metabolic gradients, and ultimately can provide biofunctional 3D scaffolds with high reproducibility, versatility and adaptability to each patient’s needs, as it occurs in OC tissue defects. The recent reports and future directions dealing with gradient scaffolds for OCTE strategies are overviewed herein. A special focus on clinical translation/regulatory approval is given.
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CiteScore
9.40
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